Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Hall N, Day 1 | |||||
(13:00–14:00) (Chair: Kansha Y.) | |||||
N113 | Development of Oxygen Carrier and Process Design for Chemical Looping Process | Chemical Looping Process Calcium Ferrite | S-11 | 591 | |
N114 | Reduction kinetics and stability of CuO and NiO on perovskite supports in chemical looping systems | reduction kinetics perovskite chemical looping system | S-11 | 675 | |
N115 | Redox reaction mechanism of metal oxide for hydrogen storage systems | redox reaction chemical looping hydrogen storage | S-11 | 896 | |
(14:00–15:20) (Chair: Ohtomo J.) | |||||
N116 | Thermochemical recuperation of methane using high purity alumina tube ¡ÁIncrease in heating value and inhibit on of coke formation by CO2 reforming¡Á | CO$2$ reforming Thermochemical recuperation alumina | S-11 | 234 | |
N117 | Thermochemical recuperation of methane using high purity alumina tube ~Reforming reaction scheme combined gas phase and surface reactions~ | steam reforming thermochemical requperation alumina | S-11 | 235 | |
N118 | Effect of LED irradiation on the oxidative degradation of 1,4-dioxane utilizing Fenton reaction | Fenton reaction 1,4-dioxane LED irradiation | S-11 | 618 | |
N119 | Energy integration for industrial symbiosis in isolated island | heat to power ratio renewable resources unused energy | S-11 | 373 | |
(15:20–16:40) (Chair: Nakagaki T.) | |||||
N120 | Self-heat recuperation system by electrocaloric effect | self-heat recuperation electrocaloric effect ferroelectric material | S-11 | 630 | |
N121 | Evaluation of a Self-Heat Recuperative Thermal Process Based on Thermodynamic Irreversibility | Thermal Process Exergy Self-Heat Recuperation | S-11 | 54 | |
N122 | New regulatory requirements and technical countermeasures for safety improvement for commercial nuclear power plants | Nuclear safety Regulatory requirements Severe accident | S-11 | 451 | |
Hall N, Day 2 | |||||
(9:00–10:00) (Chair: Yoshiie R.) | |||||
N201 | Ethanol reforming by use of novel carbon-supported metal catalysts under hydrothermal conditions | Ethanol reforming Hydrothermal condition Carbon-supported metal catalysts | S-11 | 588 | |
N202 | Steam Reforming of Ethanol over Electrically-Heated Anodic Alumina Catalysts for Hydrogen Production | Ethanol steam reforming Nickel anodic-alumina catalyst hydrogen | S-11 | 616 | |
N203 | Impacts of trace impurities contained in coal syngas on the performance of SOFC (Nat. Inst. Adv. Ind. Sci. and Tech.) Kuramoto Koji, | SOFC Chemical degradation coal syngas | S-11 | 642 | |
(10:00–11:00) (Chair: Kuramoto K.) | |||||
N204 | Reduction technology of ash deposition in the waste combustion boilers | Ash deposition waste fouling | S-11 | 245 | |
N205 | Trace elements in particles with their size distributions during coal gasification | Coal gasification Trace elements Particles | S-11 | 592 | |
N206 | Effect of operating condition on char-volatile interaction during coal gasification | Circulating fluidized bed (CFB) Char-volatile interaction Reforming of tar | S-11 | 557 | |
(11:00–12:00) (Chair: Nakagawa H.) | |||||
N207 | Modeling of Char Gasification in a Bubbling Fluidized Bed Reactor | Coal Gasification Modeling | S-11 | 309 | |
N208 | System for the utilization of low rank coal and biomass | low rank coal biomass chemical reaction engineering | S-11 | 233 | |
(13:00–14:00) (Chair: Hosokai S.) | |||||
N213 | Reduction behavior of hematite/carbon composites produced from limonite and COG tar | Ironmaking Hematite/carbon composite Reduction behavior | S-11 | 385 | |
N214 | Development of energy saving separation method of solvent and extract obtained by degradative solvent extraction of low-grade carbonaceous resources. | Rice straw Solvent extraction Solvent recycling | S-11 | 696 | |
N215 | Kinetic analysis of low temperature oxidation of low rank coals for the prediction of their self-ignition behavior | low rank coals self-ignition kinetic analysis | S-11 | 932 | |
(14:00–15:00) (Chair: Kumita M.) | |||||
N216 | Research and development of low GWP refrigerants suitable for heat pump systems | Low GWP Refrigerant Heat Transfer Heat Pump Cycle | S-11 | 218 | |
N218 | Enhancement of LiBr-Water Absorption Heat Pump Performance by Supersaturated Fine Crystal Slurry | Absorption Heat Pump Slurry LiBr Solution | S-11 | 10 | |
(15:00–16:00) (Chair: Ryu J.) | |||||
N219 | Preparation of LiOH/Mesoporous Silica Composite toward Low-temperature Heat Utilization | : chemical heat storage lithium hydroxide mesoporous silica | S-11 | 819 | |
N220 | Characteristics evaluation of chemical thermal storage with with Na2S hydration reaction | Chemical thermal energy storage Sodium sulphide hydrate Thermal energy storage | S-11 | 680 | |
N221 | Preparation of metal salt/anodized alumina composites and their water vapor sorption characteristics | Aluminium anodized film Metal salt impregnation Water vapor sorption | S-11 | 878 | |
(16:00–17:00) (Chair: Tanaka K.) | |||||
N222 | Global Design of Solar Chemical Heat Pump | Solar Chemical Heat Pump Chemical Heat Storage | S-11 | 726 | |
N223 | The development of materials for ammonia storage | ammonia storage metal halide | S-11 | 260 | |
N224 | (withdrawn) | 100 | 794 | ||
Hall N, Day 3 | |||||
(9:40–11:00) (Chair: Kubota M.) | |||||
N303 | Performances of Mg(OH)2-Expanded Graphite-LiBr Composite for Thermal Energy Storage | Thermal energy storage Chemical heat pump Lithium bromide | S-11 | 881 | |
N304 | Dehydration and hydration behavior of Metalsalt-PCP composite | Chemical heat storage Porous Coordination Polymer Metal salt | S-11 | 263 | |
N305 | Development of Heat storage producing high temperature heat output with gas-solid reaction | Heat storage chemical reaction Heat Output | S-11 | 948 | |
N306 | Development of micro-encapsulated metallic phase change material | Heat storage Heat transportation micro-encapsulation | S-11 | 441 | |
(11:00–12:00) (Chair: Nomura T.) | |||||
N307 | Dehumidification behaviors of desiccant system using cross-flow type adsorber coated with adsorbent regenerable at low temperature | Dehumidification performance Cross-flow type adsorber Low temperature regeneration | S-11 | 842 | |
N308 | Temperature dependence of water adsorption in porous carbons | water vapor adsorption porous carbon temperature dependence | S-11 | 906 | |
N309 | Preparation of high-density KOH activated carbon for methanol vapor adsorption | Activated carbon KOH activation Densified adsorbent | S-11 | 833 |